Borrelia recurrentis employs a novel multifunctional surface protein with anti-complement, anti-opsonic and invasive potential to escape innate immunity
about
Borrelia valaisiana resist complement-mediated killing independently of the recruitment of immune regulators and inactivation of complement componentsA novel animal model of Borrelia recurrentis louse-borne relapsing fever borreliosis using immunodeficient mice.Functional characterization of Borrelia spielmanii outer surface proteins that interact with distinct members of the human factor H protein family and with plasminogenHuman complement regulators C4b-binding protein and C1 esterase inhibitor interact with a novel outer surface protein of Borrelia recurrentis.In vitro identification of novel plasminogen-binding receptors of the pathogen Leptospira interrogansImmune evasion of Borrelia miyamotoi: CbiA, a novel outer surface protein exhibiting complement binding and inactivating properties.Complement factor H-related proteins CFHR2 and CFHR5 represent novel ligands for the infection-associated CRASP proteins of Borrelia burgdorferi.Leptospiral endostatin-like protein A is a bacterial cell surface receptor for human plasminogenBacillus anthracis interacts with plasmin(ogen) to evade C3b-dependent innate immunity.Functional characterization of LcpA, a surface-exposed protein of Leptospira spp. that binds the human complement regulator C4BPIdentification of residues within ligand-binding domain 1 (LBD1) of the Borrelia burgdorferi OspC protein required for function in the mammalian environment.Multiple activities of LigB potentiate virulence of Leptospira interrogans: inhibition of alternative and classical pathways of complement.Staphylococcus aureus manganese transport protein C (MntC) is an extracellular matrix- and plasminogen-binding protein.Identification of the primary mechanism of complement evasion by the periodontal pathogen, Treponema denticola.Mapping the ligand-binding region of Borrelia hermsii fibronectin-binding proteinWhole-Chain Tick Saliva Proteins Presented on Hepatitis B Virus Capsid-Like Particles Induce High-Titered Antibodies with Neutralizing PotentialHead Lice of Pygmies Reveal the Presence of Relapsing Fever Borreliae in the Republic of Congo.Protease-dependent mechanisms of complement evasion by bacterial pathogens.Large linear plasmids of Borrelia species that cause relapsing fever.Bacterial plasminogen receptors: mediators of a multifaceted relationship.The Cross-Talk between Spirochetal Lipoproteins and Immunity.Interaction of spirochetes with the host fibrinolytic system and potential roles in pathogenesis.Bacterial pathogens activate plasminogen to breach tissue barriers and escape from innate immunity.There Is a Method to the Madness: Strategies to Study Host Complement Evasion by Lyme Disease and Relapsing Fever SpirochetesGlycerol-3-phosphate dehydrogenase 2 is a novel factor H-, factor H-like protein 1-, and plasminogen-binding surface protein of Candida albicans.Interaction of human complement factor H variants Tyr⁴⁰² and His⁴⁰² with Leptospira spp.Molecular characterization of the interaction of Borrelia parkeri and Borrelia turicatae with human complement regulators.Roles for phagocytic cells and complement in controlling relapsing fever infection.Comparative analysis of the properties and ligand binding characteristics of CspZ, a factor H binding protein, derived from Borrelia burgdorferi isolates of human origin.Complement Immune Evasion by Spirochetes.The Complement Binding and Inhibitory Protein CbiA of Borrelia miyamotoi Degrades Extracellular Matrix Components by Interacting with Plasmin(ogen).
P2860
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P2860
Borrelia recurrentis employs a novel multifunctional surface protein with anti-complement, anti-opsonic and invasive potential to escape innate immunity
description
2009 nî lūn-bûn
@nan
2009 թուականին հրատարակուած գիտական յօդուած
@hyw
2009 թվականին հրատարակված գիտական հոդված
@hy
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
name
Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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label
Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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Borrelia recurrentis employs a ...... tial to escape innate immunity
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P2093
P2860
P1433
P1476
Borrelia recurrentis employs a ...... tial to escape innate immunity
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P2093
Christiane Brenner
Markus M Simon
Melanie Schott
Peter Kraiczy
Reinhard Wallich
Sally J Cutler
Sonja Grosskinsky
P2860
P356
10.1371/JOURNAL.PONE.0004858
P407
P577
2009-01-01T00:00:00Z